Issue 47, 2012

Highly ordered and gap controllable two-dimensional non-close-packed colloidal crystals and plasmonic–photonic crystals with enhanced optical transmission

Abstract

We present a facile one-step co-self-assembly method for the fabrication of two-dimensional (2D) non-close-packed (ncp) colloidal crystals (CCs) using polystyrene (PS) colloidal spheres and tetraethylorthosilicate (TEOS) sol. The resultant 2D ncp CCs demonstrated long-range ordering at the centimeter-scale without cracks due to the addition of TEOS sol. The inter-particle gap of the ncp CCs can be easily controlled by varying the amount of TEOS sol added during the assembly process. The crack-free 2D CCs were employed to form hybrid plasmonic–photonic crystals by depositing a thin film of gold. Experimental and simulated transmission spectra of the hybrid plasmonic–photonic crystals were found to be in good agreement. This simple and low-cost method provides a platform for the fabrication of high-quality 2D ncp CCs and may facilitate the development of various applications of ncp CCs.

Graphical abstract: Highly ordered and gap controllable two-dimensional non-close-packed colloidal crystals and plasmonic–photonic crystals with enhanced optical transmission

Supplementary files

Article information

Article type
Paper
Submitted
24 Jul 2012
Accepted
28 Sep 2012
First published
01 Oct 2012

J. Mater. Chem., 2012,22, 24668-24675

Highly ordered and gap controllable two-dimensional non-close-packed colloidal crystals and plasmonic–photonic crystals with enhanced optical transmission

Z. Cai, Y. J. Liu, E. S. P. Leong, J. Teng and X. Lu, J. Mater. Chem., 2012, 22, 24668 DOI: 10.1039/C2JM34896A

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